mirror of
https://github.com/ryujinx-mirror/ryujinx.git
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f77694e4f7
* Implement a new physical memory manager and replace DeviceMemory * Proper generic constraints * Fix debug build * Add memory tests * New CPU memory manager and general code cleanup * Remove host memory management from CPU project, use Ryujinx.Memory instead * Fix tests * Document exceptions on MemoryBlock * Fix leak on unix memory allocation * Proper disposal of some objects on tests * Fix JitCache not being set as initialized * GetRef without checks for 8-bits and 16-bits CAS * Add MemoryBlock destructor * Throw in separate method to improve codegen * Address PR feedback * QueryModified improvements * Fix memory write tracking not marking all pages as modified in some cases * Simplify MarkRegionAsModified * Remove XML doc for ghost param * Add back optimization to avoid useless buffer updates * Add Ryujinx.Cpu project, move MemoryManager there and remove MemoryBlockWrapper * Some nits * Do not perform address translation when size is 0 * Address PR feedback and format NativeInterface class * Remove ghost parameter description * Update Ryujinx.Cpu to .NET Core 3.1 * Address PR feedback * Fix build * Return a well defined value for GetPhysicalAddress with invalid VA, and do not return unmapped ranges as modified * Typo
162 lines
5.5 KiB
C#
162 lines
5.5 KiB
C#
using Ryujinx.Audio;
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using Ryujinx.Common.Logging;
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using Ryujinx.Cpu;
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using Ryujinx.HLE.HOS.Kernel.Threading;
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using Ryujinx.HLE.HOS.Services.Audio.AudioOutManager;
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using System.Text;
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namespace Ryujinx.HLE.HOS.Services.Audio
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{
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[Service("audout:u")]
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class IAudioOutManager : IpcService
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{
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private const string DefaultAudioOutput = "DeviceOut";
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private const int DefaultSampleRate = 48000;
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private const int DefaultChannelsCount = 2;
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public IAudioOutManager(ServiceCtx context) { }
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[Command(0)]
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// ListAudioOuts() -> (u32 count, buffer<bytes, 6>)
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public ResultCode ListAudioOuts(ServiceCtx context)
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{
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return ListAudioOutsImpl(
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context,
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context.Request.ReceiveBuff[0].Position,
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context.Request.ReceiveBuff[0].Size);
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}
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[Command(1)]
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// OpenAudioOut(u32 sample_rate, u16 unused, u16 channel_count, nn::applet::AppletResourceUserId, pid, handle<copy, process>, buffer<bytes, 5> name_in)
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// -> (u32 sample_rate, u32 channel_count, u32 pcm_format, u32, object<nn::audio::detail::IAudioOut>, buffer<bytes, 6> name_out)
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public ResultCode OpenAudioOut(ServiceCtx context)
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{
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return OpenAudioOutImpl(
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context,
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context.Request.SendBuff[0].Position,
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context.Request.SendBuff[0].Size,
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context.Request.ReceiveBuff[0].Position,
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context.Request.ReceiveBuff[0].Size);
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}
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[Command(2)] // 3.0.0+
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// ListAudioOutsAuto() -> (u32 count, buffer<bytes, 0x22>)
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public ResultCode ListAudioOutsAuto(ServiceCtx context)
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{
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(long recvPosition, long recvSize) = context.Request.GetBufferType0x22();
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return ListAudioOutsImpl(context, recvPosition, recvSize);
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}
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[Command(3)] // 3.0.0+
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// OpenAudioOutAuto(u32 sample_rate, u16 unused, u16 channel_count, nn::applet::AppletResourceUserId, pid, handle<copy, process>, buffer<bytes, 0x21>)
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// -> (u32 sample_rate, u32 channel_count, u32 pcm_format, u32, object<nn::audio::detail::IAudioOut>, buffer<bytes, 0x22> name_out)
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public ResultCode OpenAudioOutAuto(ServiceCtx context)
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{
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(long sendPosition, long sendSize) = context.Request.GetBufferType0x21();
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(long recvPosition, long recvSize) = context.Request.GetBufferType0x22();
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return OpenAudioOutImpl(
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context,
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sendPosition,
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sendSize,
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recvPosition,
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recvSize);
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}
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private ResultCode ListAudioOutsImpl(ServiceCtx context, long position, long size)
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{
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int nameCount = 0;
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byte[] deviceNameBuffer = Encoding.ASCII.GetBytes(DefaultAudioOutput + "\0");
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if ((ulong)deviceNameBuffer.Length <= (ulong)size)
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{
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context.Memory.Write((ulong)position, deviceNameBuffer);
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nameCount++;
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}
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else
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{
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Logger.PrintError(LogClass.ServiceAudio, $"Output buffer size {size} too small!");
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}
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context.ResponseData.Write(nameCount);
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return ResultCode.Success;
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}
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private ResultCode OpenAudioOutImpl(ServiceCtx context, long sendPosition, long sendSize, long receivePosition, long receiveSize)
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{
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string deviceName = MemoryHelper.ReadAsciiString(
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context.Memory,
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sendPosition,
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sendSize);
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if (deviceName == string.Empty)
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{
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deviceName = DefaultAudioOutput;
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}
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if (deviceName != DefaultAudioOutput)
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{
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Logger.PrintWarning(LogClass.Audio, "Invalid device name!");
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return ResultCode.DeviceNotFound;
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}
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byte[] deviceNameBuffer = Encoding.ASCII.GetBytes(deviceName + "\0");
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if ((ulong)deviceNameBuffer.Length <= (ulong)receiveSize)
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{
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context.Memory.Write((ulong)receivePosition, deviceNameBuffer);
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}
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else
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{
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Logger.PrintError(LogClass.ServiceAudio, $"Output buffer size {receiveSize} too small!");
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}
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int sampleRate = context.RequestData.ReadInt32();
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int channels = context.RequestData.ReadInt32();
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if (sampleRate == 0)
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{
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sampleRate = DefaultSampleRate;
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}
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if (sampleRate != DefaultSampleRate)
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{
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Logger.PrintWarning(LogClass.Audio, "Invalid sample rate!");
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return ResultCode.UnsupportedSampleRate;
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}
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channels = (ushort)channels;
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if (channels == 0)
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{
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channels = DefaultChannelsCount;
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}
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KEvent releaseEvent = new KEvent(context.Device.System);
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ReleaseCallback callback = () =>
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{
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releaseEvent.ReadableEvent.Signal();
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};
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IAalOutput audioOut = context.Device.AudioOut;
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int track = audioOut.OpenTrack(sampleRate, channels, callback);
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MakeObject(context, new IAudioOut(audioOut, releaseEvent, track));
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context.ResponseData.Write(sampleRate);
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context.ResponseData.Write(channels);
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context.ResponseData.Write((int)SampleFormat.PcmInt16);
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context.ResponseData.Write((int)PlaybackState.Stopped);
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return ResultCode.Success;
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}
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}
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} |